• Title/Summary/Keyword: Science curriculum

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A method to integrate physics and earthscience in high school course (인문고등학교 물리와 지구과학 통합 과정의 한 모형)

  • Choi, Byung-In
    • Journal of The Korean Association For Science Education
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    • v.2 no.1
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    • pp.16-30
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    • 1980
  • In is a recent trend of the world to study the integrated science curriculum development. This study aims at pursuing how to integrate physics and earthscience in high school course and forming a tentative plan as to an integrated process between both the subjects. The one was compared with the other accor ding to the basic concepts and theteaching objecties. The contents of these two subjects were analysed, the overlapping parts being chosen, and so in the hierachy of the curriculum, some mistakes were found in eaching these two two subjects. It proved valid to in tegrate these two subject. A concrete scheme was offered to in tegrate these two subjects-physics and earthscience, when a tentative plan concerning, the integra ted process was made. This new plan can make the time required for teaching decrease by 5% The better study on the basic structure of the integrated concepts between these two subjects will go on further in this respect. It is necessary to train again the teachres concerned with this new subject and to put an emphasis on the elective course between physics and earthscience in the teacher's college curriculum.

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A Study on Curriculum Development in the Field of Consumer Science (소비자학분야의 대학교과과정개발에 대한 연구)

  • 여정성
    • Journal of the Korean Home Economics Association
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    • v.31 no.1
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    • pp.1.1-11
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    • 1993
  • The purpose of this study is to develop the curriculum in the field of Consumer Science through the analysis of current curricula which are offered within Home Economics units in Korea and the U.S. A field of Consumer Science was proposed to be divided into two different area, the area related to household economy and the area related to consumer problems. The area related to household economy includes the subfield of household economics and the subfield of family financial management. The area related to consumer problems are the subfield of consumer decision-making, the subfield of consumer education, and the subfield of consumer protection policy. And the new curriculum based on this classification was developed and discussed with respect to the purpose and content of lectures.

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Analysis of Application Status of Process-Centered Assessment in Elementary School Science Classes (초등학교 과학 수업에서 과정중심평가 적용 실태 분석)

  • Kwak, Youngjun;Ha, Ji-hoon
    • Journal of The Korean Association For Science Education
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    • v.40 no.5
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    • pp.463-471
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    • 2020
  • The purpose of this study is to analyze application status about the process-centered assessment in elementary school science classes. For this purpose, a survey was conducted with 133 teachers and 2,089 students in elementary schools, and in-depth interviews with eight teachers were conducted. Elementary school teachers had a positive attitude toward the adoption of the process-centered assessment of 2015 revised science curriculum. After applying 2015 revised science curriculum, teachers used more performance assessments and less traditional ones in science classes. Elementary school students recognized that they receive feedbacks from their teachers more often with the implementation of the 2015 revised science curriculum. Through in-depth interviews, it was possible to confirm the difficulty of applying the process-centered assessment of elementary school teachers, such as lack of understanding of process-centered assessment and lack of time for its application. Based on the results of the study, the necessity for improving teacher understanding of process-centered assessment and the need to disseminate process-centered assessment materials are suggested.

Analysis of Learning Concepts Related to Metabolism Presented in the Life Filed of Science Textbooks According to the National Common Basic Curriculum (국민공통기본교육과정 과학과의 생명영역 물질대사에 관련한 학습개념 분석)

  • Shim, Kew-Cheol;Yi, Bu-Yeon;Kim, Hyun-Sup
    • Journal of The Korean Association For Science Education
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    • v.23 no.6
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    • pp.627-633
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    • 2003
  • This study is to investigate the level and connection of learning concepts related to metabolism presented in life science textbooks developed according to the national common basic curriculum. One kind of elementary school, and three kinds of middle school and high school science textbooks were analysed. The gross number of concepts related to metabolism was 42 in elementary, 149 in middle and 126 in high school science textbooks. The number of concepts was much more different by school than by publisher. Ratio of the number of concrete versus formal concepts decreased gradationally by grade, but the number of learning concepts increased radically by grade. Thus, it is implied that science learning concepts are presented considering the number of concepts as well as cognitive level of learner, and unit and content are constructed on the connection among them in developing science curriculum and textbooks.

A Study on the Curriculum of Library and Information Science in Junior Colleges (전문대학 도서관과(圖書館科)의 교육과정에 관한 연구)

  • Kim Myung-Ok
    • Journal of the Korean Society for Library and Information Science
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    • v.10
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    • pp.71-120
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    • 1983
  • In this study, a model curriculum for the Library and Information Science programs in Junior Colleges is presented by comparing those curricula of the Republic of Korea, the United States of America, England and Japan. In Korea, 80 credits are required for graduate of Junior College and 60 credits of that total credits are for major courses. At Toshokan Danki Daikagu in Japan, 73 credits are opened for the Department of Library Science and 87 credits for the Department of Library and Information Science respectively. In the United States of America, 30 credits for major courses out of 90 total credits are opened at Lansing Community College and 24 credits for major courses out of 60-64 credits at Mesa Community College distinctively. On the basis of the various analyses, the following principles are applied in designning the model curriculum; (1) Possibly 3 credits per subject are assigned, (2) Major credits for graduate are 60-64 credits including possible optional subjects, (3) 20 percents of those 60-64 credits shall be applied for electives, so that 72-78 credits are assigned for major, (4) In order to combine theory and practice, and to select practice areas as required major, the ratio between required and elective must be adjusted, (5) In order to avoid duplication of subject, adequate individuality must be provided, (6) The Information Science areas must be dealt with in Library Science since computer systems are being rapidly adopted in libraries and the education for resources of materials and foreign languages are also important for successful fulfillment of mediator's roles between materials and users. Therefore the following model curriculum is suggested; 31 credits in 11 subjects for required major, 46 credits in 18 subjects for electives in major, total 77 credits for 29 subjects are established, and it includes such areas as material organization, foreign languages, resources of materials, library management, information science, fundamental studies, services and practice.

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An Analysis of Learning Contents Related to Biotechnology in Life Science II and General Engineering Textbooks Based on the 2015 Revised National Curriculum (2015 개정 교육과정 생명과학II와 공학일반에 제시된 생명공학기술 관련 학습 내용 분석)

  • Hwa-Jung Han;Kew-Cheol Shim
    • Journal of The Korean Association For Science Education
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    • v.44 no.2
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    • pp.209-217
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    • 2024
  • This study aimed to analyze the learning contents related to biotechnology in life science II and general engineering based on the 2015 revised national curriculum and discuss pedagogical implications for biotechnology education. The main findings were as follows: First, while the learning topics of life science II focused on the ethical aspects related to biotechnology, the learning topics of general engineering focused on the industrial aspects of biotechnology. Second, there were types of overlapping biotechnologies in the life science II textbooks and general engineering textbooks. However, the life science II textbooks provided more scientific and professional descriptions of biotechnology principles than the general engineering textbooks. Also, the life science II textbooks provided more specific overall explanations than the general engineering textbooks. There was a lack of ethical considerations concerning biotechnology in the general engineering textbooks. These findings imply that it is necessary to reorganize biotechnology content based on each school's curriculum and student characteristics.

A Study for the Middle School Science Curriculum to Enhance Creative Problem Solving Abilities-Focusing on the 6th National Curriculum and Classroom Observations- (창의적 문제 해결력 신장을 위한 중학교 과학 교육과정 연구-현행 교육과정과 수업현장 분석을 중심으로-)

  • Choi, Kyung-Hee;Cho, Yon-Soon;Choi, Duk-Joo
    • Journal of The Korean Association For Science Education
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    • v.18 no.2
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    • pp.149-160
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    • 1998
  • The purpose of this study was to analyze the 6th national secondary science curriculum and classroom practices to collect the basic data for developing secondary science program focusing on creative problem-solving ability. The creative problem-solving ability was conceptualized as an active process of producing new solutions to problems and consisted of five components: general knowledge, domain-specific knowledge, motivation, divergent thinking and critical thinking. The research questions were generated as follows: (1) Whether creative problem-solving elements-domain specific knowledge(declarative knowledge and inquiry methods) were included or not in the 6th secondary science curriculum, textbooks and teacher's guide? If so, how are they represented? (2) Whether the teachers tried to enhance divergent and critical thinking of their students. Through content analyses, observations and interviews, these research questions were answered as follows: (1) Inquiry methods, which are important to develop creative problem-solving abilities in science, were underestimated in comparison with declarative knowledge. In other words. inquiry methods were regarded only as tools to understand the scientific concepts and principles. (2) It was hard to find the situations which teachers provided opportunities for divergent and critical thinking to their students. Based on these results, the followings were recommended: (1) Inquiry methods should be regarded as a goal not as a tool and be used to acquire inquiry methods themselves. (2) Teachers should not stick to the prescribed inquiry methods prescribed in the textbook, but to give opportunities for thinking various kinds of inquiry methods to improve divergent and critical thinking.

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Analysis on Continuity between the 2015 Revised Elementary Intelligent Life Curric ulum and Sc ienc e Curric ulum for Grades 3-4 (2015 개정 초등학교 슬기로운 생활과 3~4학년 과학과 교육과정의 연계성 분석)

  • Park, Jisun;Chang, Jina;Jin, Ye Eun
    • Journal of Korean Elementary Science Education
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    • v.41 no.2
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    • pp.267-282
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    • 2022
  • This study aims to analyze the continuity and sequence between the intelligent life curriculum for grades 1-2 and the science curriculum for grades 3-4 with a focus on knowledge and inquiry process skills. The results demonstrate that contents related to science in the intelligent life curriculum consisted of only 10 out of 32 elements. Five elements were related to the science curriculum for grades 3-4 and limited to the 'life sciences' area. Particularly, the intelligent life curriculum did not address topics related to 'matter' and 'motion and energy'. Developmental connection was established in the 'life sciences' area and dramatic changes were noted for the topics related to 'earth and space' area. In terms of inquiry process skills, the levels of observation, measurement, inference, and communication naturally increased, whereas a developmental connection was noted between the intelligent life and science curricula. Classification can be viewed as a developmental link; however, viewing the classification as scientific from the epistemic perspectives was insufficient. In the case of expectation, a gap was observed in both curricula due to the absence of expectation activities in the intelligent life curricula. The study discussed the implications for securing the connection between the intelligent life and science curricula on the basis of these results.

Modeling of Nursing Competencies for Competency-Based Curriculum Development (역량기반 교육과정 개발을 위한 간호역량 모델링에 대한 고찰)

  • Ko, Ja-Kyung;Chung, Myung Sill;Choe, Myoung-Ae;Park, Young Im;Bang, Kyung-Sook;Kim, Jeong Ah;Yoo, Mi Soo;Jang, Hye Young
    • The Journal of Korean Academic Society of Nursing Education
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    • v.19 no.1
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    • pp.87-96
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    • 2013
  • Purpose: Competency-based curriculum has attracted many nursing institutions' attention, pursuing the enhancement of competency and the quality of education. The goal of this study was to not merely scrutinize the nomenclature of competency and competency model as a concept of pedagogy as well as nursing science, but also form a well understanding of development process for nursing competency-based curriculum and nursing competency modeling. Methods: A comprehensive review on related literatures was conducted in each section of 1) competency-based curriculum, 2) competency and competency model, and 3) contents of competency. Results: The nomenclature of competency including nursing competencies, competency modeling and competency-based curriculum were clarified and summarized. Through analyzing and reviewing former studies related to competency, desirable nursing competency modeling and nursing competency-based curriculum were proposed and described. Conclusion: Learner-centered curriculum should be established based on nursing education that emphasizes intellectual skills acquisition and the enhancement of future-oriented professionalism. Competency modeling should reflect the fact that teaching-learning strategies should focus on the integration of nursing theories and clinical practices. Nursing competency modeling is essential in order to develop a genuine competency-based curriculum while in-depth practical research should be followed so that nursing theories and clinical practices work together in a coordinated fashion.

Research on Innovation of General Environmental Education in Korean Universities (대학 교양환경교육 개선방안에 관한 연구)

  • Sung, Jung-Hee;Shin, Eui-Soon;Park, Tae Yoon
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.10 no.3
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    • pp.88-99
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    • 2007
  • This study is aimed to suggest a direction for the general environment education through analyzing current environment education curriculums and survey of educational needs for students in Korean universities. Since the result of this survey shows that most university students lack experience in environmental education in their secondary education, the basic educational programs as well as advanced educational programs should be included to develop a general environmental education curriculum for university students. So far, general environmental education for university students has not witnessed a clear and distinct object and direction. Since we live in a situation where environmental problems should be considered in every aspect of our society, the general environmental education curriculum for university students shall play a role to solve these problems. Additionally, we need to change the way of environment education from educating and raising the environment professionals to educating and raising people who comprehensively understand economy, society and environment under the sustainable development paradigm. Also the focus of environmental education should swift from natural science to over all perspectives. Recently, the need of interdisciplinary curriculum for the environment education field has been discussed in universities. However, it has not been integrated into the normal curriculum. In this regard, systemic improvement which enables general education curriculum to operate flexibly will be followed. The key to establish an interdisciplinary curriculum is a flexible educational curriculum system which can solve problems arising from departmental curriculums, and promptly respond to the demand of educational and social consumers. Additionally, the result of survey shows that students want diverse educational operations and teaching methods, equipping educational assistance system for these needs will be required.